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A flow-through enzymatic microreactor for the rapid conversion of triacylglycerols into fatty acid ethyl ester and fatty acid methyl ester derivatives for GC analysis

机译:流通式酶促微反应器,用于将三酰基甘油快速转化为脂肪酸乙酯和脂肪酸甲酯衍生物,用于GC分析

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摘要

A flow-through enzymatic microreactor for the rapid conversion of triacylglycerols (TAG) into fatty acid ethyl ester (FAEE) or fatty acid methyl ester (FAME) derivatives was developed. The microreactor was a porous silica monolith fabricated within a 320 mu m ID fused silica capillary with lipase from Candida antarctica immobilized onto the large surface area of the monolith. The microreactor was used for the room temperature ethanolysis of TAG from edible oils including canola, sesame, soybean and refined-bleached-deodorized palm oil. GC/MS-NCI and GC/FID were used to prove the identification of the FAEE and FAME products. The microreactor completely transformed the starting oils into FAEEs or FAMEs, without the use of any reagents other than alcohol, in quantities suitable for GC analysis. The prototype microreactors were reusable >5 times with ethanol and 2 times with methanol. The FAEE products obtained using the microreactor were similar to those produced using commercial Novozyme 435 enzyme beads as well as by catalysis with ethanolic H2SO4.
机译:开发了一种用于将三酰基甘油(TAG)快速转化为脂肪酸乙酯(FAEE)或脂肪酸甲酯(FAME)的流通型酶促微反应器。微型反应器是在320微米ID熔融石英毛细管中制造的多孔二氧化硅整体结构,其中来自南极假丝酵母的脂肪酶固定在整体表面上。该微反应器用于从菜籽油,芝麻油,大豆油和精制漂白脱臭棕榈油中的食用油在室温下乙醇化TAG。使用GC / MS-NCI和GC / FID来证明对FAEE和FAME产品的识别。微型反应器将起始油完全转化为FAEE或FAME,而无需使用酒精以外的任何其他试剂(适合于GC分析)。原型微反应器在乙醇中可重复使用> 5次,在甲醇中可重复使用2次以上。使用微反应器获得的FAEE产物与使用商业Novozyme 435酶珠以及乙醇H2SO4催化产生的产物相似。

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